ASTM D7954 D7954M-2014 4732 Standard Practice for Moisture Surveying of Roofing and Waterproofing Systems Using Non-Destructive Electrical Impedance Scanners《使用无损电阻抗扫描仪对屋面和防水系统进行水分.pdf
《ASTM D7954 D7954M-2014 4732 Standard Practice for Moisture Surveying of Roofing and Waterproofing Systems Using Non-Destructive Electrical Impedance Scanners《使用无损电阻抗扫描仪对屋面和防水系统进行水分.pdf》由会员分享,可在线阅读,更多相关《ASTM D7954 D7954M-2014 4732 Standard Practice for Moisture Surveying of Roofing and Waterproofing Systems Using Non-Destructive Electrical Impedance Scanners《使用无损电阻抗扫描仪对屋面和防水系统进行水分.pdf(8页珍藏版)》请在麦多课文档分享上搜索。
1、Designation: D7954/D7954M 14Standard Practice forMoisture Surveying of Roofing and Waterproofing SystemsUsing Non-Destructive Electrical Impedance Scanners1This standard is issued under the fixed designation D7954/D7954M; the number immediately following the designation indicates theyear of original
2、 adoption or, in the case of revision, the year of last revision. A number in parentheses indicates the year of lastreapproval. A superscript epsilon () indicates an editorial change since the last revision or reapproval.1. Scope1.1 This practice applies to techniques that use non-destructive electr
3、ical impedance (EI) scanners to locate mois-ture and evaluate the comparitive moisture content withininsulated low-slope roofing and waterproofing systems.1.2 This practice is applicable to roofing and waterproofingsystems wherein insulation is placed above the deck andpositioned underneath and in c
4、ontact with electrically noncon-ductive single-ply or built-up roofing and waterproofing mem-branes and systems such as coal tar, asphalt, modified bitumen,thermoplastics, spray polyurethane foam, and similar electri-cally nonconductive membrane materials. This practice is alsoapplicable to roofing
5、and waterproofing systems without insu-lation placed above moisture absorbing decks such as wood,concrete, or gypsum, that are in contact with single-ply orbuilt-up roofing and waterproofing membranes as describedabove.1.3 This practice is applicable to roofing and waterproofingsystems incorporating
6、 electrically nonconductive rigid boardinsulation made from materials such as organic fibers, perlite,cork, fiberglass, wood-fiber, polyisocyanurate, polystyrene,phenolic foam, composite boards, gypsum substrate boards,and other electrically nonconductive roofing and waterproofingsystems such as spr
7、ay-applied polyurethane foam.1.4 This practice is not appropriate for all combinations ofmaterials used in roofing and waterproofing systems.1.4.1 Metal and other electrically conductive surface cover-ings and near-surface embedded metallic components are notsuitable for surveying with impedance sca
8、nners because of theelectrical conductivity of these materials.1.4.2 This practice is not appropriate for use with BlackEPDM membranes or coatings because of its high dielectriccontent and will give false positives.1.4.3 Aluminum foil on top-faced insulation, roofing, orwaterproofing membranes gives
9、 a false positive reading and isnot suitable for surveying with impedance scanners; however,liquid-applied aluminum pigmented emulsified asphalt-basedcoatings shall not normally affect impedance scanner readings.1.4.4 See A1.4 for some cautionary notes on roofing anoma-lies and limitations that affe
10、ct the impedance test practice.1.5 Moisture scanners using impedance based technologyare classified as EI scanners.NOTE 1The term capacitance is sometimes used when describingimpedance scanners. Capacitance scanners are purely capacitive as theydo not have a resistive component. Impedance scanners c
11、ombine bothcapacitance and resistance for testing; thus, they are well suited to themeasurement of different types of materials and constructions found inroofing and waterproofing systems as the combination of both componentsallows for a more versatile testing, calibration, and measurement arrange-m
12、ent.1.6 This practice also addresses necessary verification ofimpedance data involving invasive test procedures using coresamples.1.7 This practice addresses two generally accepted scanningtechniques for conducting moisture surveys using electricalimpedance scanners:1.7.1 Technique AContinuous syste
13、matic scanning andrecording (see 8.2), and1.7.2 Technique BGrid format scanning and recording(see 8.3).1.8 This practice addresses some meteorological conditionsand limitations for performing impedance inspections.1.9 This practice addresses the effect of the roofing orwaterproofing construction, ma
14、terial differences, and exteriorsurface conditions on the moisture inspections.1.10 This practice addresses operating procedures, operatorqualifications, operating methods, scanning, surveying, andrecording techniques.1.11 UnitsThe values stated in either SI units or inch-pound units are to be regar
15、ded separately as standard. Thevalues stated in each system may not be exact equivalents;therefore, each system shall be used independently of the other.Combining values from the two systems may result in non-conformance with the standard.1.12 This standard does not purport to address all of thesafe
16、ty concerns, if any, associated with its use. It is the1This practice is under the jurisdiction ofASTM Committee D08 on Roofing andWaterproofing and is the direct responsibility of Subcommittee D08.20 on RoofingMembrane Systems.Current edition approved July 15, 2014. Published August 2014. DOI: 10.1
17、520/D7954_D7954M-14.Copyright ASTM International, 100 Barr Harbor Drive, PO Box C700, West Conshohocken, PA 19428-2959. United States1responsibility of the user of this standard to establish appro-priate safety and health practices and determine the applica-bility of regulatory limitations prior to
18、use. Caution should betaken when accessing, walking, or using scanning equipmenton the roofing or waterproofing surfaces, or elevated locations,when using ladders, and when raising and lowering equipmentto elevated locations.2. Referenced Documents2.1 ASTM Standards:2C1616 Test Method for Determinin
19、g the Moisture Contentof Organic and Inorganic Insulation Materials by WeightD1079 Terminology Relating to Roofing and WaterproofingD7438 Practice for Field Calibration and Application ofHand-Held Moisture MetersE2586 Practice for Calculating and Using Basic StatisticsF2659 Guide for Preliminary Eva
20、luation of ComparativeMoisture Condition of Concrete, Gypsum Cement andOther Floor Slabs and Screeds Using a Non-DestructiveElectronic Moisture MeterNOTE 2See A1.3 for other referenced documents.3. Terminology3.1 For definitions of terms used in this practice, refer toTerminology D1079.3.2 Definitio
21、ns of Terms Specific to This Standard:3.2.1 comparative moisture, content, nqualitative charac-terization of moisture content in relative terms (that is, low,medium, and high levels of moisture).3.2.2 core sample, nsmall specimen of insulation andmembrane having a minimum of 2-in. 50-mm diameterobta
22、ined by cutting through these components down to thedeck and removing them from the roofing section under test.3.2.2.1 DiscussionCore samples are used to verify themembrane and insulation composition and ascertain informa-tion on their condition.3.2.3 detect or detection, v or nfor the purpose of im
23、ped-ance scanning, the condition at which there is a consistentindication that an elevated level of impedance reading ispresent within the roofing or waterproofing system.3.2.4 false-positive, adjreading that indicates that elevatedmoisture is present when it is not.3.2.4.1 DiscussionFor example, a
24、false positive in roofingfor impedance scanning may be returned when some otherelectrically conductive material is present in the roofingsystem.3.2.5 gravimetric analysis, ndetermination of moisturecontent by weight of a material by comparing wet weight toover dry weight expressed as a percentage.3.
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